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首页> 外文期刊>Nanotechnology >Trajectory control of PbSe-gamma-Fe2O3 nanoplatforms under viscous flow and an external magnetic field
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Trajectory control of PbSe-gamma-Fe2O3 nanoplatforms under viscous flow and an external magnetic field

机译:粘性流和外磁场作用下PbSe-γ-Fe2O3纳米平台的轨迹控制

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摘要

The flow behavior of nanostructure clusters, consisting of chemically bonded PbSe quantum dots and magnetic gamma-Fe2O3 nanoparticles, has been investigated. The clusters are regarded as model nanoplatforms with multiple functionalities, where the gamma-Fe2O3 magnets serve as transport vehicles, manipulated by an external magnetic field gradient, and the quantum dots act as fluorescence tags within an optical window in the near-infrared regime. The clusters' flow was characterized by visualizing their trajectories within a viscous fluid (mimicking a blood stream), using an optical imaging method, while the trajectory pictures were analyzed by a specially developed processing package. The trajectories were examined under various flow rates, viscosities and applied magnetic field strengths. The results revealed a control of the trajectories even at low magnetic fields (<1 T), validating the use of similar nanoplatforms as active targeting constituents in personalized medicine.
机译:研究了由化学键合的PbSe量子点和磁性γ-Fe2O3纳米颗粒组成的纳米结构簇的流动行为。团簇被认为是具有多种功能的模型纳米平台,其中γ-Fe2O3磁体充当运输工具,由外部磁场梯度控制,量子点在近红外区域的光学窗口内充当荧光标签。通过使用光学成像方法可视化它们在粘性流体(模拟血流)中的轨迹来表征团簇的流动,同时通过专门开发的处理程序包分析轨迹图片。在各种流速,粘度和施加的磁场强度下检查了轨迹。结果表明,即使在低磁场(<1 T)下也能控制轨迹,从而验证了在个性化医学中类似纳米平台作为活性靶向成分的用途。

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